Joint MMSE precoder and decoder design for downlink multiuser MIMO systems with arbitrary transmit power constraints

I. Lu
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引用次数: 11

Abstract

A novel unified approach to deal with arbitrary transmitted power constraints for designing jointly the MMSE precoders and decoders in downlink multiuser MIMO systems is developed. This work is an extension of the iterative approach developed in [1] for the total power constraint. An explicit expression relating Lagrange multipliers with the per-user constraint can be obtained using the proposed approach to mitigate the time consuming root searching for the Lagrange multipliers in [1]. Moreover, the explicit expression allows the MMSE solution subject to arbitrary transmit power constraints. In this paper, total, per-user, per-antenna, and peak power constraints are formulated in under the same format and solved using the proposed approach. It is shown in some two-user numerical examples that the raw BER performance obtained from the practical per-antenna power constraint is similar to those of the per-user and total power constraints and is 1–1.5 dB better than that of the peak power constraint.
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具有任意发射功率约束的下行多用户MIMO系统的联合MMSE预编解码器设计
针对下行多用户MIMO系统中任意传输功率约束的问题,提出了一种统一设计MMSE预编解码器的方法。这项工作是对[1]中针对总功率约束开发的迭代方法的扩展。使用本文提出的方法可以得到拉格朗日乘子与每用户约束之间的显式表达式,从而减少了[1]中拉格朗日乘子的耗时根搜索。此外,显式表达式允许MMSE解决方案受任意发射功率约束。在本文中,总功率约束、每用户约束、每天线约束和峰值功率约束以相同的格式表述,并使用所提出的方法进行求解。一些双用户的数值算例表明,实际的单天线功率约束得到的原始误码性能与单用户和总功率约束相似,比峰值功率约束好1-1.5 dB。
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